Novartis Institutes for BioMedical Research, Inc., 100 Technology Square & 250 Massachusetts Ave. Cambridge, MA 02139, USA.
J Mol Graph Model. 2011 Sep;30:179-85. doi: 10.1016/j.jmgm.2011.07.006. Epub 2011 Jul 22.
Riboswitches are mRNA structural elements that act as intracellular sensors of small-molecule metabolites. By undergoing conformational changes capable of modulating translation or terminating transcription, riboswitches are able to play a role in regulating the concentration of essential metabolites in the cell. Computer-guided fluorescence experiments were carried out to interrogate molecular dynamics and conformational changes in the minimal riboswitch aptamer that binds 7-aminomethyl-7-deazaguanine (preQ₁). Our combined experimental results and computational analysis suggest that the preQ₁ riboswitch apo form is structured but shows no evidence of a ligand-binding pocket. Simulations of the apo and bound forms indicate a large conformational change is triggered by the breaking of the Watson-Crick base pairing of nucleotides G11 and C31 upon preQ₁ removal, followed by collapse of the pocket due to interfering π-stacking. Computational predictions of local aptamer dynamics were validated by fluorescence experiments employing 2-aminopurine substitutions. In-line probing reactions confirmed that fluorophore-labeled riboswitches retain similar higher-order structural features as the unlabeled aptamer upon ligand binding, although their affinity for the ligand is reduced by the introduction of the fluorescent reporter.
核糖开关是一种 mRNA 结构元件,作为小分子代谢物的细胞内传感器发挥作用。通过经历能够调节翻译或终止转录的构象变化,核糖开关能够在调节细胞内必需代谢物的浓度方面发挥作用。进行了计算机引导的荧光实验,以研究与结合 7-氨基甲基-7-脱氮鸟嘌呤(PreQ₁)的最小核糖开关适体相关的分子动力学和构象变化。我们的综合实验结果和计算分析表明,PreQ₁ 核糖开关无配体结合口袋,但没有证据表明其形成了结构。对 apo 和结合形式的模拟表明,PreQ₁ 去除后,G11 和 C31 核苷酸的 Watson-Crick 碱基配对的破坏引发了一个大的构象变化,随后由于干扰π-堆积,口袋坍塌。通过使用 2-氨基嘌呤取代进行荧光实验,验证了局部适体动力学的计算预测。在线探测反应证实,荧光标记的核糖开关在配体结合时保留与未标记适体相似的高级结构特征,尽管引入荧光报告器会降低它们与配体的亲和力。